注意缺陷多动障碍儿童额-皮质下结构连接的非典型性别差异:与延迟折扣的关联。
Sex differences in atypical fronto-subcortical structural connectivity among children with attention-deficit/hyperactivity disorder: Associations with delay discounting.
机构信息
Center for Neurodevelopmental and Imaging Research, Kennedy Krieger Institute, USA; Neuropsychology Department, Kennedy Krieger Institute, Baltimore, MD, USA; Department of Psychiatry and Behavioral Sciences, Johns Hopkins University, USA.
Center for Neurodevelopmental and Imaging Research, Kennedy Krieger Institute, USA.
出版信息
Behav Brain Res. 2023 Aug 24;452:114525. doi: 10.1016/j.bbr.2023.114525. Epub 2023 Jun 3.
PURPOSE
Atypical fronto-subcortical neural circuitry has been implicated in the pathophysiology of attention-deficit/hyperactivity disorder (ADHD), including connections between prefrontal cortical regions involved in top-down cognitive control and subcortical limbic structures (striatum and amygdala) involved in bottom-up reward and emotional processing. The integrity of fronto-subcortical connections may also relate to interindividual variability in delay discounting, or a preference for smaller, immediate over larger, delayed rewards, which is associated with ADHD, with recent evidence of ADHD-related sex differences.
METHODS
We applied diffusion tensor imaging to compare the integrity of the white matter connections within fronto-subcortical tracts among 187 8-12 year-old children either with ADHD ((n = 106; 29 girls) or typically developing (TD) controls ((n = 81; 28 girls). Analyses focused on diagnostic group differences in fractional anisotropy (FA) within fronto-subcortical circuitry implicated in delay discounting, connecting subregions of the striatum (dorsal executive and ventral limbic areas) and amygdala with prefrontal regions of interest (dorsolateral [dlPFC], orbitofrontal [OFC] and anterior cingulate cortex [ACC]), and associations with two behavioral assessments of delay discounting.
RESULTS
Children with ADHD showed reduced FA in tracts connecting OFC with ventral striatum, regardless of sex, whereas reduced FA in the OFC-amygdala and ventral ACC-amygdala tracts were specific to boys with ADHD. Across diagnostic groups and sex, reduced FA in the dorsal ACC-executive striatum tract correlated with greater game time delay discounting.
CONCLUSIONS
These results suggest a potential neurobiological substrate of heightened delay discounting in children with ADHD and support the need for additional studies including larger sample sizes of girls with ADHD to further elucidate ADHD-related sex differences in these relationships.
目的
非典型额皮质下神经回路与注意缺陷多动障碍(ADHD)的病理生理学有关,包括参与自上而下认知控制的前额皮质区域与参与自下而上奖励和情绪处理的皮质下边缘结构(纹状体和杏仁核)之间的连接。额皮质下连接的完整性也可能与延迟折扣的个体间变异性有关,或者更喜欢较小的即时奖励而不是较大的延迟奖励,这与 ADHD 有关,最近有证据表明 ADHD 存在性别差异。
方法
我们应用弥散张量成像比较了 187 名 8-12 岁的儿童,包括 ADHD 儿童(n=106;29 名女孩)和典型发育对照组(n=81;28 名女孩),其额皮质下束内的白质连接的完整性。分析集中在与延迟折扣相关的额皮质下回路中,连接纹状体(背侧执行区和腹侧边缘区)和杏仁核与前额叶感兴趣区(背外侧[dlPFC]、眶额[OFC]和前扣带皮层[ACC])之间的诊断组在分数各向异性(FA)差异,以及与延迟折扣的两种行为评估的关联。
结果
无论性别如何,患有 ADHD 的儿童在连接 OFC 与腹侧纹状体的束中显示出 FA 降低,而在 OFC-杏仁核和腹侧 ACC-杏仁核束中的 FA 降低则特定于患有 ADHD 的男孩。在诊断组和性别之间,背侧 ACC-执行纹状体束中的 FA 降低与更大的游戏时间延迟折扣相关。
结论
这些结果表明,ADHD 儿童的延迟折扣增加可能存在潜在的神经生物学基础,并支持需要进行更多研究,包括更大样本量的 ADHD 女孩,以进一步阐明这些关系中与 ADHD 相关的性别差异。
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